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The Electrochemical Performances Of Ti-v-based Hydrogen Storage Composite Electrodes Prepared By Ball Milling Method

机译:球磨法制备的Ti-v基储氢复合电极的电化学性能

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In order to overcome the inherent disadvantages of Ti-V-based hydrogen storage alloys, such as poor activation behavior and low high-rate dischargeability, the novel composites Ti_(0.17)Zr_(0.08)V_(0.35)Cr_(0.1)Ni_(0.3)-x wt.% La_(0.7)Mg_(0.3)Ni_(2.75)Co_(0.75) (x = 0, 5, 10 and 20) were successfully synthesized by ball milling method in the present study. And the structure and overall electrochemical properties of as-prepared composites are investigated systemically. The electrochemical studies show that the maximum discharge capacity of the composite electrodes displays no variation with the increase of La_(0.7)Mg_(0.3)Ni_(2.75)Co_(0.75) content, whereas the high-rate dischargeability (HRD) and the activation behavior are distinctly improved with increasing x. The electrochemical hydrogen kinetics of composite electrodes is also studied by means of electrochemical impedance spectroscopy (EIS), linear polarization (LP), anodic polarization (AP) and potential-step measurements. It is found that the charge-transfer reaction resistance R_(ct) is decreased with increasing the amount of La_(0.7)Mg_(0.3)Ni_(2.75)Co_(0.75) while exchange current density I_o, limiting current density I_L and hydrogen diffusion coefficient D are all increased with increasing the amount of La_(0.7)Mg_(0.3)Ni_(2.75)Co_(0.75). These results suggest that the formation of composite with La_(0.7)Mg_(0.3)Ni_(2.75)Co_(0.75) alloy is a promising strategy for improving the HRD, activation behavior and electrochemical kinetics of Ti-V-based alloy electrodes.
机译:为了克服Ti-V基储氢合金的固有缺点,如活化性能差和高倍率放电率低,新型复合材料Ti_(0.17)Zr_(0.08)V_(0.35)Cr_(0.1)Ni_(本研究通过球磨法成功合成了0.3)-x wt。%La_(0.7)Mg_(0.3)Ni_(2.75)Co_(0.75)(x = 0、5、10和20)。并系统地研究了所制备复合材料的结构和整体电化学性能。电化学研究表明,随着La_(0.7)Mg_(0.3)Ni_(2.75)Co_(0.75)含量的增加,复合电极的最大放电容量无变化,而高倍率放电率(HRD)和活化行为随着x的增加而明显改善。还通过电化学阻抗谱(EIS),线性极化(LP),阳极极化(AP)和电势阶跃测量研究了复合电极的电化学氢动力学。发现随着交换电流密度I_o,极限电流密度I_L和氢扩散的增加​​,电荷转移反应电阻R_(ct)随着La_(0.7)Mg_(0.3)Ni_(2.75)Co_(0.75)的增加而降低。随着La_(0.7)Mg_(0.3)Ni_(2.75)Co_(0.75)的增加,系数D都增加。这些结果表明,形成具有La_(0.7)Mg_(0.3)Ni_(2.75)Co_(0.75)合金的复合材料是改善Ti-V基合金电极的HRD,活化行为和电化学动力学的有前途的策略。

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